Synthesis of an optimal set of radar track-while-scan smoothing equations

T. Benedict, G. Bordner
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引用次数: 208

Abstract

Performance measures are described which realistically reflect both noise-reduction and maneuver-following capability of a radar track-while-scan (TWS) system. Illustrations are given which compare various smoothing equations on the basis of this performance measure. Finally, a set of position-and-velocity tracking equations is synthesized by a calculus-of-variations technique. The synthesized set is optimum for both position and velocity tracking within the given performance sense, in the class of all fixed parameter, linear tracking equations. The resulting optimally synthesized set characterizes the commonly termed " \alpha-\beta " tracker, with the important proviso that \beta=\alpha^{2}/(2 - \alpha) .
一组最优雷达随扫跟踪平滑方程的合成
描述了真实反映雷达随扫跟踪(TWS)系统降噪和机动跟踪能力的性能指标。在此性能指标的基础上,给出了各种平滑方程的比较实例。最后,利用变分法合成了一组位置和速度跟踪方程。在所有固定参数的线性跟踪方程中,在给定的性能意义下,合成集对位置和速度跟踪都是最优的。由此产生的最佳合成集表征了通常称为“\alpha - \beta”的跟踪器,其重要的附带条件是\beta = \alpha ^{2}/(2 - \alpha)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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